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mcpmesh_local_api/
client.rs

1//! A no-iroh mcpmesh-local/1 client: connect the UDS, read the server's `Hello`
2//! first frame, assert the api name, then issue typed request/response frames. Distinct
3//! from the CLI crate (`cli/`)'s ControlClient (which uses mcpmesh_net::framing) — this one links no
4//! iroh, so kb and the host shell can use it. kb calls this to self-register
5//! its `[services.kb]` socket backend with the running mcpmesh daemon.
6use std::path::Path;
7
8use serde_json::Value;
9
10use crate::codec::{FrameReader, Inbound, MAX_FRAME_BYTES, write_frame};
11use crate::protocol::{
12    AuditSummaryResult, BackendSpec, BlobFetchParams, BlobFetchResult, BlobGrantParams,
13    BlobPublishParams, BlobPublishResult, BlobScopeList, Hello, InviteParams, InviteResult,
14    OpenSessionParams, OrgJoinParams, OrgJoinResult, PairParams, PairResult, PeerRemoveParams,
15    PeerRenameParams, PeerServicesParams, PeerServicesResult, RegisterServiceParams, Request,
16    RosterInstallParams, RosterInstallResult, ServiceAllowParams, SetAppMetadataParams,
17    SetNicknameParams, SetRelaysParams, SetRelaysResult, SetRosterUrlParams, StatusResult,
18    StreamFrame, UnregisterServiceParams,
19};
20use crate::transport::{connect_local, split_local};
21
22/// The client's read half — boxed so ONE `ControlClient` serves every transport (the
23/// platform socket/pipe via [`connect_control`], or an embedder's in-memory duplex via
24/// [`connect_control_io`]).
25pub type ControlRead = Box<dyn tokio::io::AsyncRead + Send + Unpin>;
26/// The client's write half — see [`ControlRead`].
27pub type ControlWrite = Box<dyn tokio::io::AsyncWrite + Send + Unpin>;
28
29/// A connected mcpmesh-local/1 client: the framed stream + the server's `Hello`.
30pub struct ControlClient {
31    hello: Hello,
32    reader: FrameReader<ControlRead>,
33    writer: ControlWrite,
34}
35
36/// Hand-rolled (the boxed transport halves are not `Debug`): the `Hello` is the one
37/// diagnostic a `{:?}` needs — tests format `Result<ControlClient, _>` this way.
38impl std::fmt::Debug for ControlClient {
39    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
40        f.debug_struct("ControlClient")
41            .field("hello", &self.hello)
42            .finish_non_exhaustive()
43    }
44}
45
46/// The error surface of the client — thin, so callers can `anyhow`-wrap it.
47///
48/// The `Display`/`Error`/`From` impls below are hand-rolled rather than derived: the
49/// `client` feature deliberately pulls ONLY tokio (no `thiserror`), and the hand-rolled
50/// impls are behavior-identical (same messages, same `?`-conversion from `io::Error`)
51/// with zero extra dependencies.
52#[derive(Debug)]
53pub enum ClientError {
54    Io(std::io::Error),
55    Closed(&'static str),
56    Malformed(&'static str),
57    WrongApi { got: String, want: &'static str },
58    Api(Value),
59}
60
61impl std::fmt::Display for ClientError {
62    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
63        match self {
64            ClientError::Io(err) => write!(f, "io: {err}"),
65            ClientError::Closed(what) => write!(f, "connection closed before {what}"),
66            ClientError::Malformed(what) => write!(f, "malformed {what} frame"),
67            ClientError::WrongApi { got, want } => {
68                write!(f, "unexpected api: got {got:?}, want {want:?}")
69            }
70            ClientError::Api(err) => write!(f, "control API error: {err}"),
71        }
72    }
73}
74
75impl std::error::Error for ClientError {}
76
77impl From<std::io::Error> for ClientError {
78    fn from(err: std::io::Error) -> Self {
79        ClientError::Io(err)
80    }
81}
82
83impl ControlClient {
84    pub fn hello(&self) -> &Hello {
85        &self.hello
86    }
87
88    /// Issue a typed request; return the JSON-RPC `result` (or `ClientError::Api` on a
89    /// JSON-RPC `error`).
90    pub async fn request(&mut self, request: Request) -> Result<Value, ClientError> {
91        let frame = serde_json::to_value(&request).expect("Request serializes");
92        self.request_value(&frame).await
93    }
94
95    /// Issue a RAW request frame — the escape hatch for methods outside the typed
96    /// [`Request`] surface (the daemon-internal `shutdown`, third-party
97    /// `{"method":..,"params":{}}` shapes the dispatcher tolerates). Returns the JSON-RPC
98    /// `result` value (or `ClientError::Api` on a JSON-RPC `error`).
99    pub async fn request_value(&mut self, request: &Value) -> Result<Value, ClientError> {
100        write_frame(&mut self.writer, request).await?;
101        match self.reader.next().await? {
102            Some(Inbound::Frame(resp)) => {
103                if let Some(err) = resp.get("error") {
104                    return Err(ClientError::Api(err.clone()));
105                }
106                Ok(resp.get("result").cloned().unwrap_or(Value::Null))
107            }
108            Some(Inbound::Violation(_)) => Err(ClientError::Malformed("response")),
109            None => Err(ClientError::Closed("response")),
110        }
111    }
112
113    /// Send a request WITHOUT reading a response — for `OpenSession`, after which the
114    /// socket stops being JSON-RPC and becomes a raw MCP byte pipe (protocol.rs). Returns
115    /// the framed halves so the caller can pump the session — the SAME `FrameReader` that
116    /// read the Hello, so bytes the daemon pipelined behind it are never lost. A caller
117    /// that must re-box the read half calls `FrameReader::into_inner`, which returns the
118    /// BUFFERED reader (its read-ahead travels with it — see the pipelining test below).
119    pub async fn open_session(
120        mut self,
121        peer: String,
122        service: String,
123    ) -> Result<(FrameReader<ControlRead>, ControlWrite), ClientError> {
124        let frame = serde_json::to_value(Request::OpenSession(OpenSessionParams { peer, service }))
125            .expect("Request serializes");
126        write_frame(&mut self.writer, &frame).await?;
127        Ok((self.reader, self.writer))
128    }
129
130    /// Send a parameterless stream-upgrade request WITHOUT reading a response — like
131    /// [`open_session`](Self::open_session), but generic on the `method`: after this call the
132    /// socket stops being request/response and becomes a one-way push stream of frames the caller
133    /// READS (the `subscribe` telemetry surface). Returns the framed halves — the SAME
134    /// `FrameReader` that read the Hello, so any frame the daemon pipelined behind it is never
135    /// lost. The write half is handed back so the caller can hold the connection open (a watcher
136    /// only reads, but dropping the writer would half-close the socket).
137    pub async fn open_stream(
138        mut self,
139        method: &str,
140    ) -> Result<(FrameReader<ControlRead>, ControlWrite), ClientError> {
141        let frame = serde_json::json!({ "method": method });
142        write_frame(&mut self.writer, &frame).await?;
143        Ok((self.reader, self.writer))
144    }
145
146    /// Issue `request` and deserialize the JSON-RPC `result` into `T` — the shared core of every
147    /// typed helper below. `what` names the result in the [`ClientError::Malformed`] surface. The
148    /// wrong-type hazard the raw [`request`](Self::request) leaves to the caller is closed here:
149    /// each helper pairs its Request variant with its result type once, in this crate.
150    async fn request_typed<T: serde::de::DeserializeOwned>(
151        &mut self,
152        request: Request,
153        what: &'static str,
154    ) -> Result<T, ClientError> {
155        let v = self.request(request).await?;
156        serde_json::from_value(v).map_err(|_| ClientError::Malformed(what))
157    }
158
159    /// Issue `request` and discard the ack body (the daemon answers `{}` for verbs with no result
160    /// vocabulary). A JSON-RPC error still surfaces as [`ClientError::Api`].
161    async fn request_ack(&mut self, request: Request) -> Result<(), ClientError> {
162        self.request(request).await.map(|_| ())
163    }
164
165    /// The daemon's `status` picture: services served, known peers, roster/presence state,
166    /// self identity, recent pairings, and advisory reachability.
167    pub async fn status(&mut self) -> Result<StatusResult, ClientError> {
168        self.request_typed(Request::Status, "status result").await
169    }
170
171    /// Register/update a `[services.*]` entry idempotently (the daemon persists it and hot-reloads
172    /// serving). The daemon acks; the ack body is discarded.
173    pub async fn register_service(
174        &mut self,
175        name: &str,
176        backend: BackendSpec,
177        allow: Vec<String>,
178    ) -> Result<(), ClientError> {
179        self.register_service_with(name, backend, allow, false)
180            .await
181    }
182
183    /// [`register_service`](Self::register_service) with an explicit `ephemeral` flag (#36). When
184    /// `ephemeral` is true the registration lives only in daemon memory and is unregistered
185    /// automatically when THIS control connection closes — no config write, nothing to clean up.
186    /// Ideal for an embedder serving a `socket` backend from a fresh path each run.
187    pub async fn register_service_with(
188        &mut self,
189        name: &str,
190        backend: BackendSpec,
191        allow: Vec<String>,
192        ephemeral: bool,
193    ) -> Result<(), ClientError> {
194        self.request_ack(Request::RegisterService(RegisterServiceParams {
195            name: name.to_string(),
196            backend,
197            allow,
198            ephemeral,
199        }))
200        .await
201    }
202
203    /// Mint a one-time pairing invite granting `services`; return the copyable
204    /// `mcpmesh-invite:` line + its expiry.
205    pub async fn invite(&mut self, services: Vec<String>) -> Result<InviteResult, ClientError> {
206        self.invite_with(services, None).await
207    }
208
209    /// [`invite`](Self::invite) with an opaque `app_label` (#31) carried through to the redeemer's
210    /// `pair` result. mcpmesh never interprets the label; the embedder does (e.g. its own URN).
211    pub async fn invite_with(
212        &mut self,
213        services: Vec<String>,
214        app_label: Option<String>,
215    ) -> Result<InviteResult, ClientError> {
216        self.request_typed(
217            Request::Invite(InviteParams {
218                services,
219                app_label,
220            }),
221            "invite result",
222        )
223        .await
224    }
225
226    /// Redeem a pairing invite; return the inviter's suggested nickname, the display-only SAS
227    /// code, and the granted services.
228    pub async fn pair(&mut self, invite_line: &str) -> Result<PairResult, ClientError> {
229        self.request_typed(
230            Request::Pair(PairParams {
231                invite_line: invite_line.to_string(),
232            }),
233            "pair result",
234        )
235        .await
236    }
237
238    /// Unpair a peer by nickname: drops its identity row AND its every-`allow` membership
239    /// (idempotent; live sessions are not severed). The daemon acks; the ack body is discarded.
240    pub async fn peer_remove(&mut self, nickname: &str) -> Result<(), ClientError> {
241        self.request_ack(Request::PeerRemove(PeerRemoveParams {
242            nickname: nickname.to_string(),
243        }))
244        .await
245    }
246
247    /// Rename a contact's nickname to `to` — every device sharing `user_id` when given, else the
248    /// single provisional `nickname` entry — carrying its grants along. The daemon refuses (a
249    /// [`ClientError::Api`]) when `to` is empty or already names a different identity. The daemon
250    /// acks; the ack body is discarded.
251    pub async fn peer_rename(
252        &mut self,
253        user_id: Option<String>,
254        nickname: Option<String>,
255        to: &str,
256    ) -> Result<(), ClientError> {
257        self.request_ack(Request::PeerRename(PeerRenameParams {
258            user_id,
259            nickname,
260            to: to.to_string(),
261        }))
262        .await
263    }
264
265    /// Install a signed roster from the LOCAL file at `path` (`org_root_pk` pins the org root on
266    /// FIRST install); return the installed org id + serial + severed-session count.
267    pub async fn roster_install(
268        &mut self,
269        path: &str,
270        org_root_pk: Option<String>,
271    ) -> Result<RosterInstallResult, ClientError> {
272        self.request_typed(
273            Request::RosterInstall(RosterInstallParams {
274                path: path.to_string(),
275                org_root_pk,
276            }),
277            "roster_install result",
278        )
279        .await
280    }
281
282    /// Pin the org root on a JOINER (no roster yet). `user_key` is a LOCAL path — the key never
283    /// crosses the API. Returns the pinned org id.
284    pub async fn org_join(
285        &mut self,
286        org_id: &str,
287        org_root_pk: &str,
288        user_id: &str,
289        user_key: &str,
290    ) -> Result<OrgJoinResult, ClientError> {
291        self.request_typed(
292            Request::OrgJoin(OrgJoinParams {
293                org_id: org_id.to_string(),
294                org_root_pk: org_root_pk.to_string(),
295                user_id: user_id.to_string(),
296                user_key: user_key.to_string(),
297            }),
298            "org_join result",
299        )
300        .await
301    }
302
303    /// Pin the HTTPS roster URL (`[roster].url`) in the daemon's config. The daemon acks; the
304    /// ack body is discarded.
305    pub async fn set_roster_url(&mut self, url: &str) -> Result<(), ClientError> {
306        self.request_ack(Request::SetRosterUrl(SetRosterUrlParams {
307            url: url.to_string(),
308        }))
309        .await
310    }
311
312    /// Discover which services a paired `peer` (a nickname, `eid:`, or `b64u:`) CURRENTLY grants
313    /// the caller (#52) — dials the peer and returns the service names its allow admits for the
314    /// caller's principal (only your own admitted services, never the peer's full registry).
315    pub async fn peer_services(&mut self, peer: &str) -> Result<Vec<String>, ClientError> {
316        self.request_typed::<PeerServicesResult>(
317            Request::PeerServices(PeerServicesParams {
318                peer: peer.to_string(),
319            }),
320            "peer_services",
321        )
322        .await
323        .map(|r| r.services)
324    }
325
326    /// Remove a service registration (#50) — the deregistration mirror of `register_service`.
327    /// Removes the whole entry (allow included) + any ephemeral registration of the name, then
328    /// hot-reloads. Idempotent: an unknown name is a clean no-op.
329    pub async fn unregister_service(&mut self, name: &str) -> Result<(), ClientError> {
330        self.request_ack(Request::UnregisterService(UnregisterServiceParams {
331            name: name.to_string(),
332        }))
333        .await
334    }
335
336    /// Grant a stable `principal` (`b64u:`/`eid:`) access to `service` WITHOUT (re)pairing (#44)
337    /// — the per-peer "sharing on" toggle. Idempotent; an unknown service is a clean no-op.
338    pub async fn service_allow_grant(
339        &mut self,
340        service: &str,
341        principal: &str,
342    ) -> Result<(), ClientError> {
343        self.request_ack(Request::ServiceAllowGrant(ServiceAllowParams {
344            service: service.to_string(),
345            principal: principal.to_string(),
346        }))
347        .await
348    }
349
350    /// Revoke a stable `principal` from `service`'s allow WITHOUT unpairing (#44) — the
351    /// "sharing off" toggle. The peer's identity row is untouched; it just cannot open NEW
352    /// sessions (in-flight ones run to completion). Idempotent.
353    pub async fn service_allow_revoke(
354        &mut self,
355        service: &str,
356        principal: &str,
357    ) -> Result<(), ClientError> {
358        self.request_ack(Request::ServiceAllowRevoke(ServiceAllowParams {
359            service: service.to_string(),
360            principal: principal.to_string(),
361        }))
362        .await
363    }
364
365    /// Set this node's opaque app-metadata blob (#39, roster mode): ≤256 bytes, folded
366    /// signed into each presence heartbeat so paired peers read it in `status` presence —
367    /// no per-peer session. `""` clears it; in-memory (re-set on startup).
368    pub async fn set_app_metadata(&mut self, metadata: &str) -> Result<(), ClientError> {
369        self.request_ack(Request::SetAppMetadata(SetAppMetadataParams {
370            metadata: metadata.to_string(),
371        }))
372        .await
373    }
374
375    /// Set this node's CUSTOM relay set LIVE (#53). `relay_urls` is the desired set (each must
376    /// parse as an iroh `RelayUrl`; empty is rejected). When the node is already in
377    /// `relay_mode = "custom"`, the daemon diffs against the running endpoint and applies the
378    /// delta live (iroh `insert_relay`/`remove_relay`) — no restart, no dropped sessions — then
379    /// persists `[network]`. When the node is currently `default`/`disabled`, the config is
380    /// persisted but the live mode transition isn't possible: the returned
381    /// [`SetRelaysResult::restart_required`] is `true`. Idempotent (an unchanged set → `changed:
382    /// false`, no writes).
383    pub async fn set_relays(
384        &mut self,
385        relay_urls: &[String],
386    ) -> Result<SetRelaysResult, ClientError> {
387        self.request_typed::<SetRelaysResult>(
388            Request::SetRelays(SetRelaysParams {
389                relay_urls: relay_urls.to_vec(),
390            }),
391            "set_relays",
392        )
393        .await
394    }
395
396    /// Rename this node LIVE (#37): the daemon validates + persists `[identity].nickname`
397    /// under its own config lock and updates the name future invites present — no restart.
398    /// Peers keep their stored pairing-time nickname until a re-invite (display-only).
399    pub async fn set_nickname(&mut self, nickname: &str) -> Result<(), ClientError> {
400        self.request_ack(Request::SetNickname(SetNicknameParams {
401            nickname: nickname.to_string(),
402        }))
403        .await
404    }
405
406    /// Summarize the daemon's LOCAL audit log into per-peer / per-service session counts
407    /// (local-only — nothing is transmitted).
408    pub async fn audit_summary(&mut self) -> Result<AuditSummaryResult, ClientError> {
409        self.request_typed(Request::AuditSummary, "audit_summary result")
410            .await
411    }
412
413    /// Publish a local file into `scope`; return the minted `mcpmesh/blob/1` ticket + hash.
414    pub async fn blob_publish(
415        &mut self,
416        scope: &str,
417        path: &str,
418    ) -> Result<BlobPublishResult, ClientError> {
419        self.request_typed(
420            Request::BlobPublish(BlobPublishParams {
421                scope: scope.to_string(),
422                path: path.to_string(),
423            }),
424            "blob_publish result",
425        )
426        .await
427    }
428
429    /// List the daemon's blob scopes (name → hashes + grants).
430    pub async fn blob_list(&mut self) -> Result<BlobScopeList, ClientError> {
431        self.request_typed(Request::BlobList, "blob_list result")
432            .await
433    }
434
435    /// Fetch a `mcpmesh/blob/1` ticket THROUGH the daemon (BLAKE3-verified), export to
436    /// `dest_path`; return the verified hash + byte length.
437    pub async fn blob_fetch(
438        &mut self,
439        ticket: &str,
440        dest_path: &str,
441    ) -> Result<BlobFetchResult, ClientError> {
442        self.request_typed(
443            Request::BlobFetch(BlobFetchParams {
444                ticket: ticket.to_string(),
445                dest_path: dest_path.to_string(),
446            }),
447            "blob_fetch result",
448        )
449        .await
450    }
451
452    /// Grant a scope to a principal — any flat-namespace entry: a group name, a user_id,
453    /// or a nickname (the shared `principal_set` expansion).
454    /// The daemon acks; the ack body is discarded (a JSON-RPC error surfaces as
455    /// `ClientError::Api`). Granting a scope to your own user_id reaches ALL of that
456    /// person's devices.
457    pub async fn blob_grant(&mut self, scope: &str, principal: &str) -> Result<(), ClientError> {
458        self.request_ack(Request::BlobGrant(BlobGrantParams {
459            scope: scope.to_string(),
460            principal: principal.to_string(),
461        }))
462        .await
463    }
464
465    /// The TYPED `subscribe` upgrade: send [`Request::Subscribe`] (after which the connection
466    /// stops being request/response — see [`open_stream`](Self::open_stream)) and return a
467    /// [`StreamSubscription`] yielding [`StreamFrame`]s. For raw frames (e.g. to tolerate frame
468    /// types newer than this crate), use `open_stream("subscribe")` instead.
469    pub async fn subscribe(self) -> Result<StreamSubscription, ClientError> {
470        let (reader, writer) = self.open_stream("subscribe").await?;
471        Ok(StreamSubscription {
472            reader,
473            _writer: writer,
474        })
475    }
476}
477
478/// A live [`Request::Subscribe`] stream yielding typed [`StreamFrame`]s (snapshot, then
479/// events/lagged notices) until the daemon side closes. Holds the connection's write half for its
480/// lifetime — a subscriber only reads, but dropping the writer would half-close the socket. Drop
481/// the subscription to disconnect (there is no request channel back).
482pub struct StreamSubscription {
483    reader: FrameReader<ControlRead>,
484    _writer: ControlWrite,
485}
486
487/// Hand-rolled like [`ControlClient`]'s: the boxed transport halves are not `Debug`.
488impl std::fmt::Debug for StreamSubscription {
489    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
490        f.debug_struct("StreamSubscription").finish_non_exhaustive()
491    }
492}
493
494impl StreamSubscription {
495    /// The next frame, or `None` when the daemon closed the stream. A frame this crate's
496    /// [`StreamFrame`] does not model (a NEWER daemon's frame type) surfaces as
497    /// [`ClientError::Malformed`] — a forward-compatible consumer reads raw frames via
498    /// [`ControlClient::open_stream`] instead.
499    pub async fn next(&mut self) -> Result<Option<StreamFrame>, ClientError> {
500        match self.reader.next().await? {
501            Some(Inbound::Frame(v)) => serde_json::from_value(v)
502                .map(Some)
503                .map_err(|_| ClientError::Malformed("stream frame")),
504            Some(Inbound::Violation(_)) => Err(ClientError::Malformed("stream frame")),
505            None => Ok(None),
506        }
507    }
508}
509
510/// Complete the mcpmesh-local/1 hello handshake over ALREADY-CONNECTED byte halves —
511/// the transport-agnostic core of [`connect_control`], and the front door for in-process
512/// embedding (`mcpmesh-node`'s `Node::control` dials a tokio duplex through here).
513pub async fn connect_control_io(
514    reader: impl tokio::io::AsyncRead + Send + Unpin + 'static,
515    writer: impl tokio::io::AsyncWrite + Send + Unpin + 'static,
516) -> Result<ControlClient, ClientError> {
517    let mut reader = FrameReader::new(Box::new(reader) as ControlRead, MAX_FRAME_BYTES);
518    let hello: Hello = match reader.next().await? {
519        Some(Inbound::Frame(v)) => {
520            serde_json::from_value(v).map_err(|_| ClientError::Malformed("hello"))?
521        }
522        Some(Inbound::Violation(_)) => return Err(ClientError::Malformed("hello")),
523        None => return Err(ClientError::Closed("hello")),
524    };
525    if hello.api != crate::protocol::API_NAME {
526        return Err(ClientError::WrongApi {
527            got: hello.api,
528            want: crate::protocol::API_NAME,
529        });
530    }
531    Ok(ControlClient {
532        hello,
533        reader,
534        writer: Box::new(writer) as ControlWrite,
535    })
536}
537
538/// Connect + complete the hello handshake, asserting the api name is `mcpmesh-local/1`.
539pub async fn connect_control(path: &Path) -> Result<ControlClient, ClientError> {
540    let stream = connect_local(path).await?;
541    let (read_half, write_half) = split_local(stream);
542    connect_control_io(read_half, write_half).await
543}
544
545/// [`connect_control`] at the platform default endpoint ([`crate::paths::default_endpoint`]):
546/// the quickstart front door — a consumer dials the running daemon without reimplementing
547/// the platform endpoint rule. Resolution failure surfaces as [`ClientError::Io`]
548/// (`NotFound`), same as a daemon that is not running.
549pub async fn connect_control_default() -> Result<ControlClient, ClientError> {
550    connect_control(&crate::paths::default_endpoint()?).await
551}
552
553// Seam-ported (Task 6): every stub daemon binds via the platform seam
554// (`transport::bind_local` + `LocalListener::accept`) rather than a raw `UnixListener`,
555// so these exercise the platform-identical `ControlClient` on BOTH unix (UDS) and windows
556// (named pipe). Gated on `feature = "service"` (bind needs it) rather than `unix`: under
557// `cargo test --workspace` feature unification turns `service` on for this crate (cli
558// depends on local-api with features=["service"]), so the module compiles and RUNS on the
559// windows CI leg. `test_endpoint` yields a platform-appropriate unique endpoint.
560#[cfg(all(test, feature = "service"))]
561mod tests {
562    use super::*;
563    use crate::protocol::{API_NAME, API_VERSION, BackendKind, ServiceInfo, StatusResult};
564    use crate::transport::{LocalListener, bind_local, split_local};
565    use tokio::io::AsyncWriteExt;
566
567    /// A unique local endpoint for a stub daemon, platform-appropriate: a tempdir socket
568    /// path on unix, a per-process-unique `\\.\pipe\…` name on windows. Returns the
569    /// endpoint plus a guard that MUST outlive the listener (the `TempDir` on unix; unit
570    /// on windows, whose pipe namespace needs no filesystem cleanup).
571    #[cfg(unix)]
572    fn test_endpoint(tag: &str) -> (std::path::PathBuf, tempfile::TempDir) {
573        let dir = tempfile::tempdir().unwrap();
574        let path = dir.path().join(format!("{tag}.sock"));
575        (path, dir)
576    }
577    #[cfg(windows)]
578    fn test_endpoint(tag: &str) -> (std::path::PathBuf, ()) {
579        use std::sync::atomic::{AtomicU64, Ordering};
580        static SEQ: AtomicU64 = AtomicU64::new(0);
581        let n = SEQ.fetch_add(1, Ordering::Relaxed);
582        let path = std::path::PathBuf::from(format!(
583            r"\\.\pipe\mcpmesh-client-test-{}-{tag}-{n}",
584            std::process::id()
585        ));
586        (path, ())
587    }
588
589    /// A stub mcpmesh daemon: send Hello, then answer one `status` with a StatusResult.
590    async fn stub_daemon(mut listener: LocalListener) {
591        let stream = listener.accept().await.unwrap();
592        let (read_half, mut writer) = split_local(stream);
593        write_frame(
594            &mut writer,
595            &serde_json::to_value(Hello {
596                api: API_NAME.into(),
597                api_version: API_VERSION.into(),
598                api_minor: 0,
599                stack_version: "0.1.0".into(),
600            })
601            .unwrap(),
602        )
603        .await
604        .unwrap();
605        let mut reader = FrameReader::new(read_half, MAX_FRAME_BYTES);
606        let req = match reader.next().await.unwrap().unwrap() {
607            Inbound::Frame(v) => v,
608            Inbound::Violation(_) => panic!("violation"),
609        };
610        assert_eq!(req["method"], "status");
611        let result = StatusResult {
612            stack_version: "0.1.0".into(),
613            services: vec![ServiceInfo {
614                name: "kb".into(),
615                allow: vec![],
616                allow_display: vec![],
617                backend: BackendKind::Socket,
618                ephemeral: false,
619            }],
620            peers: vec![],
621            roster: None,
622            presence: vec![],
623            self_user_id: None,
624            recent_pairings: vec![],
625            reachability: vec![],
626            self_nickname: String::new(),
627        };
628        write_frame(
629            &mut writer,
630            &serde_json::json!({ "jsonrpc": "2.0", "id": 1, "result": result }),
631        )
632        .await
633        .unwrap();
634        writer.flush().await.unwrap();
635    }
636
637    /// The transport-agnostic front door: the same hello handshake over a plain in-memory
638    /// duplex — what an embedded node's `Node::control` dials through.
639    #[tokio::test]
640    async fn connect_control_io_handshakes_over_a_duplex() {
641        let (client_io, mut server_io) = tokio::io::duplex(4096);
642        tokio::spawn(async move {
643            write_frame(
644                &mut server_io,
645                &serde_json::to_value(Hello {
646                    api: API_NAME.into(),
647                    api_version: API_VERSION.into(),
648                    api_minor: 0,
649                    stack_version: "in-proc".into(),
650                })
651                .unwrap(),
652            )
653            .await
654            .unwrap();
655        });
656        let (r, w) = tokio::io::split(client_io);
657        let client = connect_control_io(r, w).await.expect("handshake");
658        assert_eq!(client.hello().stack_version, "in-proc");
659    }
660
661    #[tokio::test]
662    async fn connect_reads_hello_asserts_api_and_requests() {
663        let (sock, _guard) = test_endpoint("status");
664        let listener = bind_local(&sock).unwrap();
665        let server = tokio::spawn(stub_daemon(listener));
666
667        let mut client = connect_control(&sock).await.unwrap();
668        assert_eq!(client.hello().api, API_NAME);
669        let result = client.request(Request::Status).await.unwrap();
670        assert_eq!(result["services"][0]["name"], "kb");
671        assert_eq!(result["services"][0]["backend"], "socket");
672        server.await.unwrap();
673    }
674
675    #[tokio::test]
676    async fn wrong_api_hello_is_rejected() {
677        let (sock, _guard) = test_endpoint("wrongapi");
678        let listener = bind_local(&sock).unwrap();
679        tokio::spawn(async move {
680            let mut listener = listener;
681            let stream = listener.accept().await.unwrap();
682            let (_r, mut w) = split_local(stream);
683            write_frame(
684                &mut w,
685                &serde_json::json!({"api":"other/1","api_version":"1.0","stack_version":"0"}),
686            )
687            .await
688            .unwrap();
689            w.flush().await.unwrap();
690        });
691        match connect_control(&sock).await {
692            Err(ClientError::WrongApi { got, want }) => {
693                assert_eq!(got, "other/1");
694                assert_eq!(want, API_NAME);
695            }
696            other => panic!("expected WrongApi, got {other:?}"),
697        }
698    }
699
700    #[tokio::test]
701    async fn blob_fetch_and_publish_deserialize_typed_results() {
702        use crate::protocol::{BlobFetchResult, BlobPublishResult};
703        let (sock, _guard) = test_endpoint("blob");
704        let listener = bind_local(&sock).unwrap();
705        let server = tokio::spawn(async move {
706            let mut listener = listener;
707            let stream = listener.accept().await.unwrap();
708            let (read_half, mut writer) = split_local(stream);
709            write_frame(
710                &mut writer,
711                &serde_json::to_value(Hello {
712                    api: API_NAME.into(),
713                    api_version: API_VERSION.into(),
714                    api_minor: 0,
715                    stack_version: "0.1.0".into(),
716                })
717                .unwrap(),
718            )
719            .await
720            .unwrap();
721            let mut reader = FrameReader::new(read_half, MAX_FRAME_BYTES);
722            // First request: blob_publish -> a ticket + hash.
723            let req = match reader.next().await.unwrap().unwrap() {
724                Inbound::Frame(v) => v,
725                Inbound::Violation(_) => panic!("violation"),
726            };
727            assert_eq!(req["method"], "blob_publish");
728            assert_eq!(req["params"]["scope"], "eng");
729            write_frame(
730                &mut writer,
731                &serde_json::json!({"jsonrpc":"2.0","id":1,"result":{"ticket":"blobT","hash":"ab"}}),
732            )
733            .await
734            .unwrap();
735            // Second request: blob_fetch -> a verified hash + length.
736            let req = match reader.next().await.unwrap().unwrap() {
737                Inbound::Frame(v) => v,
738                Inbound::Violation(_) => panic!("violation"),
739            };
740            assert_eq!(req["method"], "blob_fetch");
741            assert_eq!(req["params"]["ticket"], "blobT");
742            assert_eq!(req["params"]["dest_path"], "/tmp/out.bin");
743            write_frame(
744                &mut writer,
745                &serde_json::json!({"jsonrpc":"2.0","id":2,"result":{"hash":"cd","bytes_len":7}}),
746            )
747            .await
748            .unwrap();
749            let _ = (
750                BlobFetchResult {
751                    hash: "cd".into(),
752                    bytes_len: 7,
753                },
754                BlobPublishResult {
755                    ticket: "blobT".into(),
756                    hash: "ab".into(),
757                },
758            );
759        });
760
761        let mut client = connect_control(&sock).await.unwrap();
762        let pub_res = client.blob_publish("eng", "/tmp/a.bin").await.unwrap();
763        assert_eq!(pub_res.ticket, "blobT");
764        assert_eq!(pub_res.hash, "ab");
765        let fetch_res = client.blob_fetch("blobT", "/tmp/out.bin").await.unwrap();
766        assert_eq!(fetch_res.hash, "cd");
767        assert_eq!(fetch_res.bytes_len, 7);
768        server.await.unwrap();
769    }
770
771    /// Regression (lossless rebox): a frame the server PIPELINES in the same write as
772    /// the Hello must survive `open_session` + kb's production re-box shape
773    /// (`FrameReader::new(Box::new(reader.into_inner()), …)`, bridge/session.rs). Against
774    /// the old `into_inner -> R` — which unwrapped the internal `BufReader` and DROPPED
775    /// its read-ahead — the pipelined frame vanished and this test failed (EOF instead of
776    /// the frame). `into_inner -> BufReader<R>` carries the read-ahead across the rebox.
777    #[tokio::test]
778    async fn frame_pipelined_behind_hello_survives_open_session_rebox() {
779        use tokio::io::AsyncRead;
780
781        let (sock, _guard) = test_endpoint("pipelined");
782        let listener = bind_local(&sock).unwrap();
783        let server = tokio::spawn(async move {
784            let mut listener = listener;
785            let stream = listener.accept().await.unwrap();
786            let (read_half, mut writer) = split_local(stream);
787            // ONE write carrying the Hello AND a session frame → both land in the
788            // client's first BufReader fill (the read-ahead under test).
789            let mut bytes = serde_json::to_vec(
790                &serde_json::to_value(Hello {
791                    api: API_NAME.into(),
792                    api_version: API_VERSION.into(),
793                    api_minor: 0,
794                    stack_version: "0.1.0".into(),
795                })
796                .unwrap(),
797            )
798            .unwrap();
799            bytes.push(b'\n');
800            bytes.extend_from_slice(b"{\"jsonrpc\":\"2.0\",\"id\":42,\"result\":{}}\n");
801            writer.write_all(&bytes).await.unwrap();
802            writer.flush().await.unwrap();
803            // Absorb the client's open_session frame so its write never sees EPIPE.
804            let mut reader = FrameReader::new(read_half, MAX_FRAME_BYTES);
805            let req = match reader.next().await.unwrap().unwrap() {
806                Inbound::Frame(v) => v,
807                Inbound::Violation(_) => panic!("violation"),
808            };
809            assert_eq!(req["method"], "open_session");
810        });
811
812        let client = connect_control(&sock).await.unwrap();
813        let (reader, _writer) = client
814            .open_session("peer".into(), "kb".into())
815            .await
816            .unwrap();
817        // kb's production shape: erase the half type behind a boxed pipe, then re-frame.
818        let boxed: Box<dyn AsyncRead + Unpin + Send> = Box::new(reader.into_inner());
819        let mut reframed = FrameReader::new(boxed, MAX_FRAME_BYTES);
820        match reframed.next().await.unwrap() {
821            Some(Inbound::Frame(v)) => assert_eq!(v["id"], 42),
822            other => panic!("pipelined frame was lost across the rebox: {other:?}"),
823        }
824        server.await.unwrap();
825    }
826
827    #[tokio::test]
828    async fn blob_grant_issues_request_and_acks() {
829        let (sock, _guard) = test_endpoint("grant");
830        let listener = bind_local(&sock).unwrap();
831        let server = tokio::spawn(async move {
832            let mut listener = listener;
833            let stream = listener.accept().await.unwrap();
834            let (read_half, mut writer) = split_local(stream);
835            write_frame(
836                &mut writer,
837                &serde_json::to_value(Hello {
838                    api: API_NAME.into(),
839                    api_version: API_VERSION.into(),
840                    api_minor: 0,
841                    stack_version: "0.1.0".into(),
842                })
843                .unwrap(),
844            )
845            .await
846            .unwrap();
847            let mut reader = FrameReader::new(read_half, MAX_FRAME_BYTES);
848            let req = match reader.next().await.unwrap().unwrap() {
849                Inbound::Frame(v) => v,
850                Inbound::Violation(_) => panic!("violation"),
851            };
852            assert_eq!(req["method"], "blob_grant");
853            assert_eq!(req["params"]["scope"], "kb-sync");
854            assert_eq!(req["params"]["principal"], "alice");
855            write_frame(
856                &mut writer,
857                &serde_json::json!({"jsonrpc":"2.0","id":1,"result":{"ok":true}}),
858            )
859            .await
860            .unwrap();
861        });
862        let mut client = connect_control(&sock).await.unwrap();
863        client.blob_grant("kb-sync", "alice").await.unwrap();
864        server.await.unwrap();
865    }
866
867    /// The typed `status()` helper pairs `Request::Status` with `StatusResult` — the caller gets
868    /// the struct, not a `Value` to hand-deserialize (and a malformed result surfaces as
869    /// `ClientError::Malformed`, never a silently-wrong type).
870    #[tokio::test]
871    async fn typed_status_helper_deserializes_the_result() {
872        let (sock, _guard) = test_endpoint("typedstatus");
873        let listener = bind_local(&sock).unwrap();
874        let server = tokio::spawn(stub_daemon(listener));
875
876        let mut client = connect_control(&sock).await.unwrap();
877        let status = client.status().await.unwrap();
878        assert_eq!(status.stack_version, "0.1.0");
879        assert_eq!(status.services[0].name, "kb");
880        assert_eq!(status.services[0].backend, BackendKind::Socket);
881        assert!(status.peers.is_empty());
882        server.await.unwrap();
883    }
884
885    /// The ack-shaped typed helpers issue the right wire method and discard the `{}` ack; a
886    /// JSON-RPC error frame surfaces as `ClientError::Api`.
887    #[tokio::test]
888    async fn typed_ack_helpers_issue_requests_and_surface_api_errors() {
889        let (sock, _guard) = test_endpoint("typedack");
890        let listener = bind_local(&sock).unwrap();
891        let server = tokio::spawn(async move {
892            let mut listener = listener;
893            let stream = listener.accept().await.unwrap();
894            let (read_half, mut writer) = split_local(stream);
895            write_frame(
896                &mut writer,
897                &serde_json::to_value(Hello {
898                    api: API_NAME.into(),
899                    api_version: API_VERSION.into(),
900                    api_minor: 0,
901                    stack_version: "0.1.0".into(),
902                })
903                .unwrap(),
904            )
905            .await
906            .unwrap();
907            let mut reader = FrameReader::new(read_half, MAX_FRAME_BYTES);
908            // peer_remove → ack.
909            let req = match reader.next().await.unwrap().unwrap() {
910                Inbound::Frame(v) => v,
911                Inbound::Violation(_) => panic!("violation"),
912            };
913            assert_eq!(req["method"], "peer_remove");
914            assert_eq!(req["params"]["nickname"], "bob");
915            write_frame(
916                &mut writer,
917                &serde_json::json!({"jsonrpc":"2.0","id":1,"result":{}}),
918            )
919            .await
920            .unwrap();
921            // peer_rename → an error frame (collision refusal).
922            let req = match reader.next().await.unwrap().unwrap() {
923                Inbound::Frame(v) => v,
924                Inbound::Violation(_) => panic!("violation"),
925            };
926            assert_eq!(req["method"], "peer_rename");
927            assert_eq!(req["params"]["to"], "Bobby");
928            write_frame(
929                &mut writer,
930                &serde_json::json!({"jsonrpc":"2.0","id":2,"error":{"code":-32000,"message":"taken"}}),
931            )
932            .await
933            .unwrap();
934        });
935
936        let mut client = connect_control(&sock).await.unwrap();
937        client.peer_remove("bob").await.unwrap();
938        match client.peer_rename(None, Some("bob".into()), "Bobby").await {
939            Err(ClientError::Api(e)) => assert_eq!(e["message"], "taken"),
940            other => panic!("expected Api error, got {other:?}"),
941        }
942        server.await.unwrap();
943    }
944
945    /// The typed `subscribe()` upgrade yields `StreamFrame`s — snapshot, event, lagged — then
946    /// `None` when the daemon side closes.
947    #[tokio::test]
948    async fn typed_subscribe_yields_frames_then_end() {
949        use crate::protocol::{ActiveSession, AuditRecord, PeerReachability};
950
951        let (sock, _guard) = test_endpoint("subscribe");
952        let listener = bind_local(&sock).unwrap();
953        let server = tokio::spawn(async move {
954            let mut listener = listener;
955            let stream = listener.accept().await.unwrap();
956            let (read_half, mut writer) = split_local(stream);
957            write_frame(
958                &mut writer,
959                &serde_json::to_value(Hello {
960                    api: API_NAME.into(),
961                    api_version: API_VERSION.into(),
962                    api_minor: 0,
963                    stack_version: "0.1.0".into(),
964                })
965                .unwrap(),
966            )
967            .await
968            .unwrap();
969            let mut reader = FrameReader::new(read_half, MAX_FRAME_BYTES);
970            let req = match reader.next().await.unwrap().unwrap() {
971                Inbound::Frame(v) => v,
972                Inbound::Violation(_) => panic!("violation"),
973            };
974            assert_eq!(req["method"], "subscribe");
975            for frame in [
976                StreamFrame::Snapshot {
977                    active_sessions: vec![ActiveSession {
978                        peer: "bob".into(),
979                        service: "notes".into(),
980                        opened_at: 7,
981                    }],
982                    reachability: vec![PeerReachability {
983                        name: "bob".into(),
984                        reachable: true,
985                        rtt_ms: Some(42),
986                        age_secs: Some(3),
987                        meta: String::new(),
988                        principal: None,
989                        path: Default::default(),
990                    }],
991                },
992                StreamFrame::Event {
993                    record: Box::new(AuditRecord::session_open(
994                        "2026-07-03T14:02:11.480Z".into(),
995                        Some("bob".into()),
996                        "notes".into(),
997                    )),
998                },
999                StreamFrame::Lagged { dropped: 12 },
1000            ] {
1001                write_frame(&mut writer, &serde_json::to_value(&frame).unwrap())
1002                    .await
1003                    .unwrap();
1004            }
1005            writer.flush().await.unwrap();
1006            // Drop the connection: the client must see the stream END (Ok(None)), not an error.
1007        });
1008
1009        let client = connect_control(&sock).await.unwrap();
1010        let mut sub = client.subscribe().await.unwrap();
1011        match sub.next().await.unwrap().unwrap() {
1012            StreamFrame::Snapshot {
1013                active_sessions,
1014                reachability,
1015            } => {
1016                assert_eq!(active_sessions[0].peer, "bob");
1017                assert_eq!(reachability[0].rtt_ms, Some(42));
1018            }
1019            other => panic!("expected the snapshot first, got {other:?}"),
1020        }
1021        match sub.next().await.unwrap().unwrap() {
1022            StreamFrame::Event { record } => {
1023                assert_eq!(record.peer.as_deref(), Some("bob"));
1024                assert_eq!(record.service.as_deref(), Some("notes"));
1025            }
1026            other => panic!("expected the event, got {other:?}"),
1027        }
1028        assert_eq!(
1029            sub.next().await.unwrap(),
1030            Some(StreamFrame::Lagged { dropped: 12 })
1031        );
1032        assert_eq!(sub.next().await.unwrap(), None, "clean end of stream");
1033        server.await.unwrap();
1034    }
1035}